定子
轭(航空)
磁铁
转子(电动)
扭矩
有限元法
计算机科学
控制理论(社会学)
机械工程
工程类
结构工程
模拟
物理
人工智能
电传电报
控制(管理)
热力学
飞行模拟器
作者
Rundong Huang,Zaixin Song,Zhiping Dong,Yuxin Liu,Chunhua Liu
标识
DOI:10.1109/tte.2023.3303047
摘要
Robot dogs are a new kind of transportation applied in express delivery and community patrol. The special structure makes them require high torque density and compact actuators. Then, a novel double-side asynchronous rotor axial-flux permanent magnet (DSAR-AFPM) machine is proposed for robot dogs. The 24-slot-20-pole (24S20P) and 36S42P configurations are adopted on two sides of the DSAR-AFPM machine. In addition, the winding configurations on the two sides are also different. The two sides are isolated by the stator yoke to ensure independent operation. Thus, the proposed DSAR-AFPM machine can drive the lower leg and thigh simultaneously. Then, a hybrid optimization is proposed in the paper to optimize the DSAR-AFPM machine. It combines the quasi-3D finite element method and 3D parametric analysis. The hybrid optimization greatly reduces the computational burden and increases the accuracy. Besides, a comparative analysis is conducted for the DSAR-AFPM machine. The comparison is performed between the DSAR-AFPM machine and two single-side counterparts AFPM machines. The independent operation of two sides is verified. Finally, an experiment is performed to validate the performance of the DSAR-AFPM machine.
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